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Merck

Ultralight nanofibre-assembled cellular aerogels with superelasticity and multifunctionality.

Nature communications (2014-12-17)
Yang Si, Jianyong Yu, Xiaomin Tang, Jianlong Ge, Bin Ding
ABSTRACT

Three-dimensional nanofibrous aerogels (NFAs) that are both highly compressible and resilient would have broad technological implications for areas ranging from electrical devices and bioengineering to damping materials; however, creating such NFAs has proven extremely challenging. Here we report a novel strategy to create fibrous, isotropically bonded elastic reconstructed (FIBER) NFAs with a hierarchical cellular structure and superelasticity by combining electrospun nanofibres and the fibrous freeze-shaping technique. Our approach causes the intrinsically lamellar deposited electrospun nanofibres to assemble into elastic bulk aerogels with tunable densities and desirable shapes on a large scale. The resulting FIBER NFAs exhibit densities of >0.12 mg cm(-3), rapid recovery from deformation, efficient energy absorption and multifunctionality in terms of the combination of thermal insulation, sound absorption, emulsion separation and elasticity-responsive electric conduction. The successful synthesis of such fascinating materials may provide new insights into the design and development of multifunctional NFAs for various applications.

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tert-Butanol, ACS reagent, ≥99.0%
Sigma-Aldrich
tetra-etil ortosilicato, reagent grade, 98%
Sigma-Aldrich
tetra-etil ortosilicato, ≥99.0% (GC)
Sigma-Aldrich
tert-Butanol, suitable for HPLC, ≥99.5%
Sigma-Aldrich
tert-Butanol, ≥99% (GC)
Sigma-Aldrich
tert-Butanol, puriss. p.a., ACS reagent, ≥99.7% (GC)
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tetra-etil ortosilicato, 99.999% trace metals basis
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tert-Butanol, anhydrous, ≥99.5%
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Nitrogen, ≥99.998%
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tert-Butanol, TEBOL® 99, ≥99.3%
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tetra-etil ortosilicato, packaged for use in deposition systems
Supelco
tert-Butanol, analytical standard